长平衡时间分析物SPME-NIR测定的动力学评价方法

J. Bürck, M. Schlagenhof, S. Roth, H. Mathieu
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引用次数: 11

摘要

近年来,聚合物包层光纤中的SPME可以有效地与近红外倏逝波光谱相结合,用于水中样品中极性烃(hc)的现场监测。通常,对于搅拌良好的溶液和低分子量HC物质,达到样品基质和纤维包层之间的分析物分配平衡的时间在2-20分钟范围内。因此,在提取平衡中测量的光谱吸光度数据用于校准和评估。然而,对于没有或只有低搅拌的样品(例如,监测井中的原位测量),甚至对于含有较高分子量的hc (> C8-C10)的充分搅拌的样品,可能需要几个小时才能达到平衡,这对于现场分析应用来说太长了。在这种情况下,基于HC萃取动力学的校准和评估算法已经开发出来,该算法允许在20分钟内对此类样品进行定量测量。该方法使用SPME-NIR仪器记录的给定HC化合物或混合物的响应曲线的初始梯度,该曲线与分析物浓度呈线性关系。该算法已在SPME-NIR光度计系统的控制和评价软件中实现,并在不同的HC水溶液样品中进行了测试。©2001 John Wiley &儿子,Inc。化学工程学报(英文版),2001
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kinetic evaluation method for SPME-NIR measurements of analytes with long equilibration time

In recent years, it has been demonstrated that SPME in polymer-clad optical fibers can be efficiently combined with NIR evanescent-wave spectroscopy for on-site monitoring of apolar hydrocarbons (HCs) in aqueous samples. Typically, the time to reach analyte partition equilibrium between sample matrix and fiber cladding for well-agitated solutions and low-molecular-weight HC species is in the range of 2–20 min. Thus, spectral absorbance data measured in extraction equilibrium are used for calibration and evaluation. However, for samples with no or only low agitation (e.g., in situ measurement in a monitoring well) and even for well-stirred samples containing HCs with higher molecular weight (>C8–C10), it may take several hours to reach equilibrium, which is by far too long for applications in field analysis. In this context, a calibration and evaluation algorithm based on HC extraction kinetics has been developed, which allows performing quantitative measurements of such samples within 20 min. This method uses the initial gradient of the response curve of a given HC compound or mixture recorded by the SPME-NIR instrument, which is linearly dependent on analyte concentration. The algorithm has been implemented in the control and evaluation software of an SPME-NIR photometer system and tested with different aqueous HC samples. © 2001 John Wiley & Sons, Inc. Field Analyt Chem Technol 5: 131–142, 2001

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